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Fruit Salad in the Lab: Comparing Botanical Species to Help Deciphering Fruit Primary Metabolism

机译:实验室中的水果沙拉:比较植物种类以帮助了解水果的主要代谢

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摘要

Although fleshy fruit species are economically important worldwide and crucial for human nutrition, the regulation of their fruit metabolism remains to be described finely. Fruit species differ in the origin of the tissue constituting the flesh, duration of fruit development, coordination of ripening changes (climacteric vs. non-climacteric type) and biochemical composition at ripeness is linked to sweetness and acidity. The main constituents of mature fruit result from different strategies of carbon transport and metabolism. Thus, the timing and nature of phloem loading and unloading can largely differ from one species to another. Furthermore, accumulations and transformations of major soluble sugars, organic acids, amino acids, starch and cell walls are very variable among fruit species. Comparing fruit species therefore appears as a valuable way to get a better understanding of metabolism. On the one hand, the comparison of results of studies about species of different botanical families allows pointing the drivers of sugar or organic acid accumulation but this kind of comparison is often hampered by heterogeneous analysis approaches applied in each study and incomplete dataset. On the other hand, cross-species studies remain rare but have brought new insights into key aspects of primary metabolism regulation. In addition, new tools for multi-species comparisons are currently emerging, including meta-analyses or re-use of shared metabolic or genomic data, and comparative metabolic flux or process-based modeling. All these approaches contribute to the identification of the metabolic factors that influence fruit growth and quality, in order to adjust their levels with breeding or cultural practices, with respect to improving fruit traits.
机译:尽管肉质水果在全球范围内具有重要的经济意义,对人类营养至关重要,但对其水果代谢的调节仍有待详细描述。水果种类在构成肉的组织来源,水果发育的持续时间,成熟变化的协调性(更年期与非更年期类型)和成熟时的生化组成与甜度和酸度方面有所不同。成熟果实的主要成分来自碳转运和代谢的不同策略。因此,韧皮部装载和卸载的时间和性质在一个物种与另一个物种之间可能存在很大差异。此外,水果种类中主要可溶性糖,有机酸,氨基酸,淀粉和细胞壁的积累和转化非常不同。因此,比较水果种类似乎是更好地了解新陈代谢的宝贵途径。一方面,对不同植物科物种的研究结果的比较可以指出糖或有机酸积累的驱动力,但这种比较通常会因每个研究中使用的异构分析方法和不完整的数据集而受到阻碍。另一方面,跨物种研究仍然很少,但是为初级代谢调节的关键方面带来了新见解。此外,目前正在出现用于多物种比较的新工具,包括荟萃分析或共享代谢或基因组数据的再利用,以及比较代谢通量或基于过程的建模。所有这些方法有助于识别影响果实生长和品质的代谢因子,以便通过育种或栽培实践来调整其水平,以改善果实性状。

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